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首页> 外文期刊>Bulletin of the Seismological Society of America >A Method to Directly Estimate S-Wave Site Amplification Factor from Horizontal-to-Vertical Spectral Ratio of Earthquakes (eHVSRs)
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A Method to Directly Estimate S-Wave Site Amplification Factor from Horizontal-to-Vertical Spectral Ratio of Earthquakes (eHVSRs)

机译:从地震水平到垂直光谱比直接估计S波站点放大因子的方法(EHVSRS)

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The main purpose of the site classification or velocity determination at a target site is to obtain or estimate the horizontal site amplification factor (HSAF) at that site during future earthquakes because HSAF would have significant effects on the strong-motion characteristics. We have been investigating various kinds of methods to delineate the S-wave velocity structures and the subsequent HSAF, as precisely as possible. After the advent of the diffuse field concept, we have derived a simple formula based on the equipartitioned energy density observed in the layered half-space for incident body waves. In this study, based on the diffuse field concept, together with the generalized spectral inversion technique (GIT), we propose a method to directly estimate the HSAF of the S-wave portion from the horizontal-to-vertical spectral ratio of earthquakes (eHVSRs). Because the vertical amplification is included in the denominator of eHVSR, it cannot be viewed as HSAF without correction. We used GIT to determine both the HSAF and the vertical site amplification factor (VSAF) simultaneously from strong-motion data observed by the networks in Japan and then deduced the log-averaged vertical amplification correction function (VACF) from VSAFs at a total of 1678 sites in which 10 or more earthquakes have been observed. The VACF without a category has a constant amplitude of about 2 in the frequency range from 1 to 15 Hz. By multiplying eHVSR by VACF, we obtained the simulated HSAF. We verified the effectiveness of this correction method using data from observation sites not used in the aforementioned averaging in the frequency range from 0.12 to 15 Hz.
机译:场地分类或目标场地速度测定的主要目的是获得或估计未来地震期间该场地的水平场地放大系数(HSAF),因为HSAF将对强震特征产生重大影响。我们一直在研究各种方法,以尽可能精确地描绘横波速度结构和随后的HSAF。在漫射场概念出现之后,我们根据在分层半空间中观察到的入射体波的等分能量密度导出了一个简单的公式。在这项研究中,我们基于扩散场概念,结合广义谱反演技术(GIT),提出了一种从地震的水平与垂直谱比(EHVSR)直接估计横波部分HSAF的方法。由于垂直放大包含在eHVSR分母中,因此未经校正,不能将其视为HSAF。我们使用GIT从日本地震台网观测到的强震数据中同时确定了HSAF和垂直场地放大系数(VSAF),然后在总共1678个观测到10次或更多地震的场地上,从VSAFs中推导了对数平均垂直放大校正函数(VACF)。无类别的VACF在1至15 Hz的频率范围内具有约2的恒定振幅。通过将eHVSR乘以VACF,我们得到了模拟的HSAF。我们使用未在上述频率范围0.12至15 Hz的平均中使用的观测点数据验证了这种校正方法的有效性。

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